首页> 外文期刊>The Journal of Physiology >mVps34 is activated following high-resistance contractions.
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mVps34 is activated following high-resistance contractions.

机译:高电阻收缩后激活mVps34。

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Following resistance exercise in the fasted state, both protein synthesis and degradation in skeletal muscle are increased. The addition of essential amino acids potentiates the synthetic response suggesting that an amino acid sensor, which is involved in both synthesis and degradation, may be activated by resistance exercise. One such candidate protein is the class 3 phosphatidylinositol 3OH-kinase (PI3K) Vps34. To determine whether mammalian Vps34 (mVps34) is modulated by high-resistance contractions, mVps34 and S6K1 (an index of mTORC1) activity were measured in the distal hindlimb muscles of rats 0.5, 3, 6 and 18 h after acute unilateral high-resistance contractions with the contralateral muscles serving as a control. In the lengthening tibialis anterior (TA) muscle, S6K1 (0.5 h = 366.3 +/- 112.08%, 3 h = 124.7 +/- 15.96% and 6 h = 129.2 +/- 0%) and mVps34 (3 h = 68.8 +/- 15.1% and 6 h = 36.0 +/- 8.79%) activity both increased, whereas in the shortening soleus and plantaris (PLN) muscles the increase was significantly lower (PLN S6K1 0.5 h = 33.1 +/- 2.29% and 3 h = 47.0 +/- 6.65%; mVps34 3 h = 24.5 +/- 7.92%). HPLC analysis of the TA demonstrated a 25% increase in intramuscular leucine concentration in rats 1.5 h after exercise. A similar level of leucine added to C2C12 cells in vitro increased mVps34 activity 3.2-fold. These data suggest that, following high-resistance contractions, mVps34 activity is stimulated by an influx of essential amino acids such as leucine and this may prolong mTORC1 signalling and contribute to muscle hypertrophy.
机译:在禁食状态下进行抵抗运动后,骨骼肌中蛋白质的合成和降解均增加。必需氨基酸的添加增强了合成反应,表明参与合成和降解的氨基酸传感器可通过抵抗运动来激活。一种此类候选蛋白是3类磷脂酰肌醇3OH激酶(PI3K)Vps34。为了确定哺乳动物的Vps34(mVps34)是否受高阻力收缩的调节,在急性单侧高阻力收缩后0.5、3、6和18 h,在大鼠后肢远端肌肉中测量了mVps34和S6K1(mTORC1的指标)的活性。以对侧肌肉为对照。在加长的胫前肌(TA)中,S6K1(0.5 h = 366.3 +/- 112.08%,3 h = 124.7 +/- 15.96%和6 h = 129.2 +/- 0%)和mVps34(3 h = 68.8 + /-15.1%和6 h = 36.0 +/- 8.79%)的活动均增加,而在比目鱼和plant肌(PLN)缩短的肌肉中,其活动显着降低(PLN S6K1 0.5 h = 33.1 +/- 2.29%和3 h) = 47.0 +/- 6.65%; mVps34 3小时= 24.5 +/- 7.92%)。 TA的HPLC分析表明,运动1.5小时后,大鼠的肌内亮氨酸浓度增加了25%。在体外向C2C12细胞中添加类似水平的亮氨酸可使mVps34活性增加3.2倍。这些数据表明,高抵抗力收缩后,大量必需氨基酸(例如亮氨酸)的流入刺激了mVps34活性,这可能延长mTORC1信号传导并促进肌肉肥大。

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